什么是三极管的放大作用?

2025-03-30 01:35:04
推荐回答(2个)
回答1:

三极管的工作原理
三极管是一种控制元件,主要用来控制电流的大小,以共发射极接法为例(信号从基极输入,从集电极输出,发射极接地),当基极电压UB有一个微小的变化时,基极电流IB也会随之有一小的变化,受基极电流IB的控制,集电极电流IC会有一个很大的变化,基极电流IB越大,集电极电流IC也越大,反之,基极电流越小,集电极电流也越小,即基极电流控制集电极电流的变化。但是集电极电流的变化比基极电流的变化大得多,这就是三极管的放大作用。IC
的变化量与IB变化量之比叫做三极管的放大倍数β(β=ΔIC/ΔIB,
Δ表示变化量。),三极管的放大倍数β一般在几十到几百倍。
三极管在放大信号时,首先要进入导通状态,即要先建立合适的静态工作点,也叫
建立偏置
,否则会放大失真。
在三极管的集电极与电源之间接一个电阻,可将电流放大转换成电压放大:当基极电压UB升高时,IB变大,IC也变大,IC
在集电极电阻RC的压降也越大,所以三极管集电极电压UC会降低,且UB越高,UC就越低,ΔUC=ΔUB。仅供参考,请参考有关书籍。

回答2:

以npn为例,be当个回路,ce当个回路,给b一个小电压,be就产生一个小电流,ce上就会产生一个几十上百倍的大电流(倍数固定,大电流由c极电源提供),如果c极下面有个电阻那电阻下端的电压就是电源电压减电阻压降了,所以整个过程就是小电压产生一个小电流再强制驱动一个大电流令电阻产生一个压降得到c极电压,最后的效果就是c极电压受b极电压线性控制,也就可以做小波形的放大之类的了

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